(a) Interpretation: The non-hydrogen atom in each case should be identified and the molecular formula for each hydride should be written. Concept introduction: Hydrogen can form only one bond. So, atom with more than one bond is the non-hydrogen atom. The second row elements contain Lithium, Beryllium, Boron, Carbon, Nitrogen, Oxygen, fluorine and neon.
(a) Interpretation: The non-hydrogen atom in each case should be identified and the molecular formula for each hydride should be written. Concept introduction: Hydrogen can form only one bond. So, atom with more than one bond is the non-hydrogen atom. The second row elements contain Lithium, Beryllium, Boron, Carbon, Nitrogen, Oxygen, fluorine and neon.
Solution Summary: The author explains that the non-hydrogen atom in each case should be identified and the molecular formula for each hydride written.
The non-hydrogen atom in each case should be identified and the molecular formula for each hydride should be written.
Concept introduction:
Hydrogen can form only one bond. So, atom with more than one bond is the non-hydrogen atom. The second row elements contain Lithium, Beryllium, Boron, Carbon, Nitrogen, Oxygen, fluorine and neon.
Interpretation Introduction
(b)
Interpretation:
An electron-dot structure for each hydride should be drawn. For which hydride there is a problem in drawing the structure should be determined.
Concept introduction:
Electron-dot structure represents valence electrons of an atom by dots and show how they are distributed in a molecule. Every atom tries to a complete valence shell or to achieve noble gas configuration by making bonds with other atoms.
how to get limiting reactant and %
yield based off this data
Compound
Mass 6) Volume(mL
Ben zaphone-5008
ne
Acetic Acid
1. Sam L
2-propanot
8.00
Benzopin-
a col
030445
Benzopin
a Colone 0.06743
Results
Compound
Melting Point (°c)
Benzopin
acol
172°c - 175.8 °c
Benzoping
to lone
1797-180.9
Assign ALL signals for the proton and carbon NMR spectra on the following pages.
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